EP0633569B1 - Door opening mechanism for ejection of magnetic tape cassette - Google Patents

Door opening mechanism for ejection of magnetic tape cassette Download PDF

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Publication number
EP0633569B1
EP0633569B1 EP93118136A EP93118136A EP0633569B1 EP 0633569 B1 EP0633569 B1 EP 0633569B1 EP 93118136 A EP93118136 A EP 93118136A EP 93118136 A EP93118136 A EP 93118136A EP 0633569 B1 EP0633569 B1 EP 0633569B1
Authority
EP
European Patent Office
Prior art keywords
door
elongated member
recorder housing
cassette
magnetic
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Lifetime
Application number
EP93118136A
Other languages
German (de)
French (fr)
Other versions
EP0633569A2 (en
EP0633569A3 (en
Inventor
Bjorn Engan
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Tandberg Data AS
Original Assignee
Tandberg Data AS
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Tandberg Data AS filed Critical Tandberg Data AS
Publication of EP0633569A2 publication Critical patent/EP0633569A2/en
Publication of EP0633569A3 publication Critical patent/EP0633569A3/en
Application granted granted Critical
Publication of EP0633569B1 publication Critical patent/EP0633569B1/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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    • GPHYSICS
    • G11INFORMATION STORAGE
    • G11BINFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
    • G11B15/00Driving, starting or stopping record carriers of filamentary or web form; Driving both such record carriers and heads; Guiding such record carriers or containers therefor; Control thereof; Control of operating function
    • G11B15/675Guiding containers, e.g. loading, ejecting cassettes
    • GPHYSICS
    • G11INFORMATION STORAGE
    • G11BINFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
    • G11B33/00Constructional parts, details or accessories not provided for in the other groups of this subclass
    • G11B33/02Cabinets; Cases; Stands; Disposition of apparatus therein or thereon
    • G11B33/027Covers

Definitions

  • the invention relates to a magnetic tape recorder in which an elongate, rectangular tape cartridge or cassette is endwise loaded and unloaded from a rectangular recorder housing.
  • the invention relates to a mechanism for opening the access door of the recorder housing, through which the tape cartridge is passed for loading and unloading.
  • the recorder housing includes a generally rectangular base and upstanding, generally rectangular outward face wall.
  • the outward face wall of the magnetic recorder housing is exposed to the operator for loading the tape cassette into and unloading the tape cassette from the interior of the magnetic recorder.
  • the outward face wall of the housing is formed with a generally rectangular slot having dimensions slightly larger than the ends of the tape cassette, so that when the end of the cassette is aligned with the slot, the cassette is easily insertable therethrough.
  • the cassette is engaged by an automated mechanism which continues the endwise movement of the cassette until the cassette has been fully inserted into the recorder housing.
  • the operator engages the automated mechanism within the recorder housing to reverse the process and cause the cassette to be endwise ejected through the access slot in the outward face wall, where upon the operator can manually grasp the outward facing end of the cassette and remove the cassette fully from the housing to complete the unloading.
  • the access slot formed in the outward face wall of the recorder housing may be provided with a hinged door, which serves to prevent the ingress of dust and other possibly harmful matter from passing through the access slot. See, for example U.S. Patent 4,622,606.
  • a door opening mechanism which is activated due to the movement of a toothed wheel which is connected to the door of a cassette player.
  • the cassette When the cassette has been shifted into the housing it is then being shifted downwardly in order to release the opening mechanism and to let the door being closed.
  • the cassette For ejecting the cassette it has first to be lifted in order to open the door by engaging a part of the door opening mechanism, then it can be shifted outwardly.
  • a principal object of the present invention is to enable a hinged door at the recorder housing access slot to serve reliably as a dust cover across the slot opening and yet be reliably opened in a mechanical fashion for injection and ejection of the tape cassette by the operator, thereby providing a solution which is less complicated and requires less mechanical parts in comparison to prior art.
  • the object of the invention is achieved by the magnetic recorder housing as defined in claim 1.
  • a door Covering the access slot in a magnetic recorder housing, through which the operator loads and unloads a magnetic tape cassette, is a door which is hinged at the top for inward rotational movement.
  • a hard stop formed in the recorder housing frame sealably abuts the bottom end of the door preventing its outward rotation.
  • a specially configured fulcrum device preferably made of integrally molded plastic, is mounted for rotation about a pivot shaft disposed parallel to the door hinge.
  • One end of the fulcrum device is connected to at least one side edge of the door.
  • the other end of the fulcrum device is formed as a curved cam surface which extends upwardly across the plane of longitudinal movement of the cartridge in the recorder housing during loading and unloading.
  • a spring force is applied to the fulcrum device, preferably in the form of an additional integrally molded resilient arm, to bias the rotation of the fulcrum device about the pivot shaft such that the one end applies a resilient bias on the door in the direction of outward rotation of the door about its hinge.
  • this end of the fulcrum device serves to hold the door normally closed, the bottom end of the door abutting against the hard stop.
  • the spring bias on the fulcrum device is overcome, during loading of a tape cassette manually by the operator, when the operator applies sufficient force against the front face of the door through the leading, inward facing end of the cassette.
  • the spring bias on the fulcrum device is overcome, during the unloading of the tape cassette from the recorder housing, to swing the door open inward ahead of the ejection movement of the cassette from the recorder housing, by a press of the cassette at its outward facing end on the curved cam surface portion of the fulcrum device.
  • Figure 1 is a perspective plan view of the magnetic recorder housing and a magnetic tape cassette disposed for endwise loading in the recorder.
  • Figure 2 is a partially schematic plan view to further define Figure 3 et al.
  • Figure 3 is a side elevational view showing the magnetic recorder housing access door closed by operation of the invention mechanism and a tape cassette approaching the door from within the recorder housing under the influence of the automated unloader.
  • Figure 4 is a side elevational view showing the door half-opened as a result of engagement of the invention mechanism by the approaching tape cassette being unloaded.
  • Figure 5 is a side elevational view showing the door fully opened under the influence of the invention mechanism so that the tape cassette being unloaded can proceed out of the recorder housing.
  • the door 1 is mounted for rotation about a hinge shaft 2 disposed at the top of the door and extending laterally across the outward face wall O of the recorder housing R and parallel to the length of the door 1 and the length of the rectangular slot 16.
  • the bottom end of the door is formed with an abutment member 3 which engages against a hard stop surface 4 formed in the frame of the recorder housing and also extending laterally along the outward face wall the length of the slot.
  • the presence of the hard stop 4 prevents the door 1 from rotating outward from the recorder housing, that is, in a clockwise direction beyond the plane of the recorder housing face wall, as viewed in Figure 3.
  • the door 1 is shown in its closed position in Figures 2 and 3.
  • a door opening mechanism 5 which is a specially configured fulcrum device.
  • at least one mechanism 5 is positioned within the recorder housing adjacent one side edge of the door 1, although it will be appreciated that a pair of such mechanisms 5 could be utilized adjacent both side edges of the door 1.
  • the mechanism 5 includes, preferably, a one-piece elongated member 6, which is preferably made of an integrally molded material, such as plastic.
  • the member 6 has a generally linear arm 7 extending outward from the base portion of the member 6 to a free end.
  • the base portion of the member 6 is journaled on a pivot shaft 8, having a longitudinal axis parallel with the longitudinal axis of the hinge shaft 2.
  • the base 8 of the member 6 and the outwardly extending arm 7 occupies spare off to one side of a track plate 9 over which tape cassettes pass during their insertion and ejection in the recorder housing.
  • extending inward from the base of the member 6 is an upwardly curved cam surface 10 of a lateral thickness, as shown in Figure 2, which causes it to extend across the longitudinal travel path of a tape cassette passing over the track plate 9 during loading and unloading.
  • the upward extension of the curve configuration of the cam surface 10 breaks across the horizontal planes of the tape cassette during loading and unloading, such that the bottom surface or base plate of the tape cassette engages the upper regions of the curved cam surface 10 during loading and unloading.
  • the member 6 is disposed for rotation about the pivot shaft 8; however, a spring force is applied in the mechanism 5 to resist the rotation of the member 6 in the counter clockwise direction as shown in Figure 3 and actually to bias the member 6 in the clockwise direction.
  • this spring force is applied to the member 6 by an integrally molded spring leg 11, which is fixed at one end to the housing frame track plate 9 and connected at its other end to the base of the member 6, as shown in Figure 3.
  • the door 1 is normally held closed by the mechanism 5.
  • the pin 12 also has its longitudinal axis parallel to the longitudinal axis of the door hinge rod 2.
  • the free end of the arm 7 and the side edge of the door 1 are rotatable about the longitudinal axis of the pin 12.
  • Between the arm 7 and the side edge of the door 1 is a stationary wall 13 which is provided with an arc-shaped groove 14 in which the pin is fitted and through which the pin 12 extends in the direction of its longitudinal axis.
  • the groove 14 defines a travel path for the free end of the arm 7 in rotation about the pivot shaft 8.
  • the mechanism 5 is rotatable about the pivot shaft 8 the distance of the arc defined by the groove 14.
  • the spring force acting on the member 6 is overcome and the door is swung open by the force of the operator pressing the inward facing, leading edge of the tape cassette C against the door 1.
  • the door 1 continues to be held open by the lower surfaces of the door supported and riding over the top surface of the tape cassette.
  • the cassette When the tape cassette is to be unloaded from the recorder housing, the cassette is engaged by an automated unloader mechanism which transports the loaded cassette C, as shown in Figure 3, longitudinally outward toward the track plate 9 and the closed door 1.
  • the door 1 thus remains swung open during unloading of the cassette, even after the automated unloader mechanism has ceased forced ejection of the cassette from the recorder housing, until the operator manually withdraws the cassette fully from the recorder housing.

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Description

BACKGROUND OF THE INVENTION
The invention relates to a magnetic tape recorder in which an elongate, rectangular tape cartridge or cassette is endwise loaded and unloaded from a rectangular recorder housing. In particular, the invention relates to a mechanism for opening the access door of the recorder housing, through which the tape cartridge is passed for loading and unloading.
The endwise loading and unloading of a rectangular magnetic tape cassette in a magnetic tape recorder housing has been known for some time. See U.S. Patent 4,573,091. Within such magnetic tape recorders, the magnetic tape contained in the cassette records data or has its data read therefrom. The magnetic tape cassette is constructed in accordance with standard specifications, and generally appears as depicted in U.S. Patent 3,976,262.
In the case of such magnetic recorders the recorder housing includes a generally rectangular base and upstanding, generally rectangular outward face wall. The outward face wall of the magnetic recorder housing is exposed to the operator for loading the tape cassette into and unloading the tape cassette from the interior of the magnetic recorder. The outward face wall of the housing is formed with a generally rectangular slot having dimensions slightly larger than the ends of the tape cassette, so that when the end of the cassette is aligned with the slot, the cassette is easily insertable therethrough. As is generally known, after the tape cassette has been partially loaded into the recorder housing through this access slot, the cassette is engaged by an automated mechanism which continues the endwise movement of the cassette until the cassette has been fully inserted into the recorder housing. When unloading of the cassette from the recorder housing is desired, the operator engages the automated mechanism within the recorder housing to reverse the process and cause the cassette to be endwise ejected through the access slot in the outward face wall, where upon the operator can manually grasp the outward facing end of the cassette and remove the cassette fully from the housing to complete the unloading.
As is also known, the access slot formed in the outward face wall of the recorder housing may be provided with a hinged door, which serves to prevent the ingress of dust and other possibly harmful matter from passing through the access slot. See, for example U.S. Patent 4,622,606.
In document DE-A 4 129 945 a door opening mechanism is disclosed which is activated due to the movement of a toothed wheel which is connected to the door of a cassette player. When the cassette has been shifted into the housing it is then being shifted downwardly in order to release the opening mechanism and to let the door being closed. For ejecting the cassette it has first to be lifted in order to open the door by engaging a part of the door opening mechanism, then it can be shifted outwardly.
In the US-A-4 953 045 a different mechanism for opening the door of a magnetic tape recorder is disclosed according to the preamble of claim 1. In this case a cassette movement holder is engaged by the cassette, when the cassette is inserted into the tape recorder. A movable pin is connected to the cassette movement holder. Due to the motion of said pin it acts on a pivotable lever which is connected to the door of the tape recorder and that can be swung open due to the rotation of the pivotable lever. Once the cassette is completely inserted, the pin releases the lever, allowing the door to close. For ejecting the cassette the mechanism comprising of a cassette movement holder and the pin is shifted. The pin acts again on the lever and opens the door, allowing the cassette due to the movement of the cassette movement holder to shift outwardly.
A principal object of the present invention is to enable a hinged door at the recorder housing access slot to serve reliably as a dust cover across the slot opening and yet be reliably opened in a mechanical fashion for injection and ejection of the tape cassette by the operator, thereby providing a solution which is less complicated and requires less mechanical parts in comparison to prior art.
SUMMARY OF THE INVENTION
The object of the invention is achieved by the magnetic recorder housing as defined in claim 1.
Covering the access slot in a magnetic recorder housing, through which the operator loads and unloads a magnetic tape cassette, is a door which is hinged at the top for inward rotational movement. A hard stop formed in the recorder housing frame sealably abuts the bottom end of the door preventing its outward rotation. Within the recorder housing a specially configured fulcrum device, preferably made of integrally molded plastic, is mounted for rotation about a pivot shaft disposed parallel to the door hinge. One end of the fulcrum device is connected to at least one side edge of the door. The other end of the fulcrum device is formed as a curved cam surface which extends upwardly across the plane of longitudinal movement of the cartridge in the recorder housing during loading and unloading. A spring force is applied to the fulcrum device, preferably in the form of an additional integrally molded resilient arm, to bias the rotation of the fulcrum device about the pivot shaft such that the one end applies a resilient bias on the door in the direction of outward rotation of the door about its hinge. Thus this end of the fulcrum device serves to hold the door normally closed, the bottom end of the door abutting against the hard stop.
The spring bias on the fulcrum device is overcome, during loading of a tape cassette manually by the operator, when the operator applies sufficient force against the front face of the door through the leading, inward facing end of the cassette. The spring bias on the fulcrum device is overcome, during the unloading of the tape cassette from the recorder housing, to swing the door open inward ahead of the ejection movement of the cassette from the recorder housing, by a press of the cassette at its outward facing end on the curved cam surface portion of the fulcrum device.
BRIEF DESCRIPTION OF THE DRAWINGS
Figure 1 is a perspective plan view of the magnetic recorder housing and a magnetic tape cassette disposed for endwise loading in the recorder.
Figure 2 is a partially schematic plan view to further define Figure 3 et al.
Figure 3 is a side elevational view showing the magnetic recorder housing access door closed by operation of the invention mechanism and a tape cassette approaching the door from within the recorder housing under the influence of the automated unloader.
Figure 4 is a side elevational view showing the door half-opened as a result of engagement of the invention mechanism by the approaching tape cassette being unloaded.
Figure 5 is a side elevational view showing the door fully opened under the influence of the invention mechanism so that the tape cassette being unloaded can proceed out of the recorder housing.
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
As shown in Figure 1, the rectangular slot 16 formed in the outward face wall O of a magnetic recorder housing R, and through which rectangularly shaped magnetic tape cassettes C may be endwise inserted or ejected from the confines of the recorder housing for loading or unloading, is closed by a door 1.
With reference to Figures 2 and 3, the door 1 is mounted for rotation about a hinge shaft 2 disposed at the top of the door and extending laterally across the outward face wall O of the recorder housing R and parallel to the length of the door 1 and the length of the rectangular slot 16. The bottom end of the door is formed with an abutment member 3 which engages against a hard stop surface 4 formed in the frame of the recorder housing and also extending laterally along the outward face wall the length of the slot. The presence of the hard stop 4 prevents the door 1 from rotating outward from the recorder housing, that is, in a clockwise direction beyond the plane of the recorder housing face wall, as viewed in Figure 3. Thus, the door 1 is shown in its closed position in Figures 2 and 3.
Situated behind the door and within the recorder housing is a door opening mechanism 5 which is a specially configured fulcrum device. In accordance with the invention, at least one mechanism 5 is positioned within the recorder housing adjacent one side edge of the door 1, although it will be appreciated that a pair of such mechanisms 5 could be utilized adjacent both side edges of the door 1. The mechanism 5 includes, preferably, a one-piece elongated member 6, which is preferably made of an integrally molded material, such as plastic.
The member 6 has a generally linear arm 7 extending outward from the base portion of the member 6 to a free end. The base portion of the member 6 is journaled on a pivot shaft 8, having a longitudinal axis parallel with the longitudinal axis of the hinge shaft 2. The base 8 of the member 6 and the outwardly extending arm 7 occupies spare off to one side of a track plate 9 over which tape cassettes pass during their insertion and ejection in the recorder housing. However, extending inward from the base of the member 6 is an upwardly curved cam surface 10 of a lateral thickness, as shown in Figure 2, which causes it to extend across the longitudinal travel path of a tape cassette passing over the track plate 9 during loading and unloading. The upward extension of the curve configuration of the cam surface 10 breaks across the horizontal planes of the tape cassette during loading and unloading, such that the bottom surface or base plate of the tape cassette engages the upper regions of the curved cam surface 10 during loading and unloading.
The member 6 is disposed for rotation about the pivot shaft 8; however, a spring force is applied in the mechanism 5 to resist the rotation of the member 6 in the counter clockwise direction as shown in Figure 3 and actually to bias the member 6 in the clockwise direction. In accordance with the preferred embodiment, this spring force is applied to the member 6 by an integrally molded spring leg 11, which is fixed at one end to the housing frame track plate 9 and connected at its other end to the base of the member 6, as shown in Figure 3.
The door 1 is normally held closed by the mechanism 5. There is a pin connection 12 extending between the free end of the arm 7 and a side edge of the door approximate the upper end of the door. The pin 12 also has its longitudinal axis parallel to the longitudinal axis of the door hinge rod 2. The free end of the arm 7 and the side edge of the door 1 are rotatable about the longitudinal axis of the pin 12. Between the arm 7 and the side edge of the door 1 is a stationary wall 13 which is provided with an arc-shaped groove 14 in which the pin is fitted and through which the pin 12 extends in the direction of its longitudinal axis. The groove 14 defines a travel path for the free end of the arm 7 in rotation about the pivot shaft 8. Thus, the mechanism 5 is rotatable about the pivot shaft 8 the distance of the arc defined by the groove 14.
As shown in Figure 3, with no external force applied on the mechanism 5, the force of the spring arm 11 on the member 6 causes the free end of the arm 7 to be held at its lowermost position in the groove 14, such that the door 1 is spring-biased closed, with its bottom end 3 sealably abutting against the hard stop 4 formed on the recorder housing frame. To rotate the door 1 inwardly about its hinge shaft 2 and thus open the door, the force of the spring arm 11 must be overcome, so that the free end of the arm 7 can be made to travel upwardly along the groove 14 to the other end of the groove arc, as viewed in Figure 3. The pin connection 12 between the free end of the arm 7 and the side edge of the door 1 causes the door to follow such rotational movement of the arm 7 and be swung open.
When the operator desires to insert a tape cassette into the recorder housing, the spring force acting on the member 6 is overcome and the door is swung open by the force of the operator pressing the inward facing, leading edge of the tape cassette C against the door 1. As the tape cassette C is inserted further into the recorder housing beneath the door swung open, the door 1 continues to be held open by the lower surfaces of the door supported and riding over the top surface of the tape cassette. After the tape cassette has been inserted sufficiently within the recorder housing to be engaged by an automated loader mechanism and withdrawn further into the recorder housing, the outward end of the tape cassette passes from underneath the door 1, and the door 1 is automatically closed under the influence of the spring force exerted by the spring arm 11 acting on the member 6 to lower the free end of the arm 7 in the groove 14 to the position again shown in Figure 3.
When the tape cassette is to be unloaded from the recorder housing, the cassette is engaged by an automated unloader mechanism which transports the loaded cassette C, as shown in Figure 3, longitudinally outward toward the track plate 9 and the closed door 1.
As shown in Figure 4, as the loaded cassette C is conducted during unloading under the power of the automated unloader mechanism into the area of the mechanism 5, the upper surface of the cassette passes beneath and against a hold down abutment 15 which maintains the outward facing end of the cassette in an aligned longitudinal travel path defined between the track plate 9 and the hold down abutment 15. In this disposition of the cassette as it moves outwardly from the recorder housing, the bottom surfaces of the cassette are forced to engage and press down on the cam surface 10 of the mechanism 6 which cam surface as discussed above, extends across the longitudinal travel path of the cassette.
As shown in Figure 5, the downward force thus exerted by the cassette as it is passed beneath and against the hold down abutment 15, acts against the cam surface 10 of the member 6 and is sufficient to overcome the spring force being exerted on the member 6 by the spring arm 11 to again cause the arm 7 to travel upwardly in the arc groove 14 and open the door 1 in advance of the outward movement of the cassette. The door 1 thus remains swung open during unloading of the cassette, even after the automated unloader mechanism has ceased forced ejection of the cassette from the recorder housing, until the operator manually withdraws the cassette fully from the recorder housing. When the cassette is fully withdrawn from the recorder housing by the operator, the bottom surfaces of the cassette are no longer pressing down on the cam surface 10 of the mechanism 5 and the bottom surfaces of the door are no longer supported by the upper surface of the cassette, whereupon the door 1 again closes under the influence of the spring force exerted by the spring arm 11 which causes the arm 7 to travel back downwardly in the groove 14.
Having described a preferred embodiment of the door opening mechanism of the present invention, it should be understood that variations and modifications will occur to those skilled in the art. Accordingly, I wish to embody within the scope of the patent warranted hereon, all such embodiments as reasonably and properly come within the scope of the invention as defined in the appended claims.
REFERENCE NUMERAL LIST
1
Door
2
Hinge shaft
3
Abutment member
4
Hard stop
5
Mechanism
6
Mechanism
7
Linear arm
8
Pivot shaft
9
Track plate
10
Cam surface
11
Spring leg
12
Pin connection
13
Stationary wall
14
Groove
15
Abutment
16
Slot
O
Face wall
R
Magnetic recorder housing
C
Magnetic tape cassette

Claims (7)

  1. Magnetic recorder housing having a rectangular slot (2) formed in the outward face wall (0) thereof and through which magnetic tape cassettes (C) of rectangular configuration pass for loading and unloading in the recorder housing (R), comprising :
    a rectangular shaped door (1) disposed on said recorder housing (R) to cover said slot (2), said door being hinged at one end thereof for rotation between a closed position and an opened position;
    a generally elongated member (6) disposed within said recorder housing (R) and journalled for rotation about an axis (8) parallel to the axis of rotation of the door hinge, one end of said elongated member (6) being connected to a side edge of said door
    a spring force applied to said elongated member (6) such that said one end normally holds said door (1) closed;
       characterized in that
    said one end being connected approximate the journaled end of said door (1); and
    the other end (10) of said elongated member is extending across the travel path of a magnetic tape cassette (C), said rotation of said elongated member being induced by said magnetic tape cassette (C) abutting said other end (10).
  2. The magnetic recorder houging of claim 1, wherein said door (1) rotates inwardly of said recorder housing (R) to open.
  3. The magnetic recorder housing of claim 1 or 2, further comprising an abutment surface (3) formed on the other end of said door for engagement against a hard stop (4) formed in the frame of said recorder housing (R) when said door is closed, such that rotation of said door (1) beyond said hard stop (4) is prevented and the other end of said door (1) is sealably closed against said hard stop (4) under the influence of said spring force.
  4. The magnetic recorder housing of claim 2, wherein said spring force is provided by a spring arm (11) and said elongated member (6) is integrally formed with said one end, said other end, and said spring arm (11).
  5. The magnetic recorder housing of claim 1, wherein the rotational movement of said elongated member (6) is defined by an arc-shaped groove (14) formed in a wall (13) between said one end of said elongated member (6) and said side edge of said door (1) and through which groove (14) said one end of said elongated member (6) and said side edge of said door (1) are connected.
  6. The magnetic recorder housing of claim 1, wherein said other end of said elongated member (6) is formed as a curved cam surface (10) over which the bottom surface of the cassette (C) being unloaded must pass en route to said door (1) covering said slot (2).
  7. The magnetic recorder housing of claim 6, further comprising an abutment (15) located approximately above said cam surface (10) of said elongated member (6), said abutment (15) being engaged and holding down said cassette (c) being unloaded against said cam surface (10), so as to overcome the spring force on said elongated member (6), causing said elongated member (6) to swing open said door (1) in advance of said cassette (C) being unloaded from said recorder housing (R).
EP93118136A 1993-07-08 1993-11-09 Door opening mechanism for ejection of magnetic tape cassette Expired - Lifetime EP0633569B1 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
US88801 1987-08-24
US08/088,801 US5430587A (en) 1993-07-08 1993-07-08 Cassette-activated mechanism for inwardly opening recorder door

Publications (3)

Publication Number Publication Date
EP0633569A2 EP0633569A2 (en) 1995-01-11
EP0633569A3 EP0633569A3 (en) 1995-07-19
EP0633569B1 true EP0633569B1 (en) 1998-02-04

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Application Number Title Priority Date Filing Date
EP93118136A Expired - Lifetime EP0633569B1 (en) 1993-07-08 1993-11-09 Door opening mechanism for ejection of magnetic tape cassette

Country Status (4)

Country Link
US (1) US5430587A (en)
EP (1) EP0633569B1 (en)
JP (1) JP2633806B2 (en)
DE (1) DE69316886T2 (en)

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US5204792A (en) * 1989-11-09 1993-04-20 Wangtek, Inc. Cartridge tape drive
JPH04355250A (en) * 1991-06-03 1992-12-09 Matsushita Electric Ind Co Ltd Magnetic recording and reproducing device
DE4129945A1 (en) * 1991-09-09 1993-03-11 Philips Patentverwaltung Pivot activator for cover flap operation of tape cassette recorder - has sensing arm associated with flap that is engaged by cassette to provide opening action via rack and pinion

Also Published As

Publication number Publication date
US5430587A (en) 1995-07-04
DE69316886D1 (en) 1998-03-12
EP0633569A2 (en) 1995-01-11
DE69316886T2 (en) 1998-05-28
JPH0798972A (en) 1995-04-11
JP2633806B2 (en) 1997-07-23
EP0633569A3 (en) 1995-07-19

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